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Numerical Investigation into the Impact of Dimensional and Geometric Tolerances on the Long-life Fatigue Strength of Mechanical Components

机译:尺寸和几何公差对机械零件长寿命疲劳强度影响的数值研究

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Complex assemblies need to address ever-increasing cost-efficiency requirements. Therefore it is necessary to max out permissible stresses during the design process. In addition, there is a need to match estimated lifetimes more and more exactly, so it is important to predict accurately the effective stresses on mechanical parts. This paper examines the impact of size and geometric tolerance on stress and long-life fatigue strength. For this purpose an in-house software tool has been developed which makes it possible to generate a CAD model with simultaneous consideration of all geometric tolerances. The resultant model has a stochastically deformed shape but still corresponds to its engineering drawing. In a second step an FE analysis is performed to determine the influence of these tolerances on the long-life fatigue strength of the parts. These results are compared with the results for the model without the geometric tolerances (using only nominal CAD data).
机译:复杂的装配需要满足不断增长的成本效益要求。因此,有必要在设计过程中最大化允许的应力。另外,需要越来越精确地匹配估计的寿命,因此准确预测机械零件上的有效应力非常重要。本文研究了尺寸和几何公差对应力和长寿命疲劳强度的影响。为此目的,已经开发了内部软件工具,该工具可以生成同时考虑所有几何公差的CAD模型。所得模型具有随机变形的形状,但仍与工程图相对应。在第二步中,进行有限元分析,以确定这些公差对零件的长寿命疲劳强度的影响。将这些结果与没有几何公差的模型结果进行比较(仅使用名义CAD数据)。

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